TW462142B - Inverter apparatus - Google Patents

Inverter apparatus Download PDF

Info

Publication number
TW462142B
TW462142B TW087112862A TW87112862A TW462142B TW 462142 B TW462142 B TW 462142B TW 087112862 A TW087112862 A TW 087112862A TW 87112862 A TW87112862 A TW 87112862A TW 462142 B TW462142 B TW 462142B
Authority
TW
Taiwan
Prior art keywords
inverter
control
aps
aforementioned
memory
Prior art date
Application number
TW087112862A
Other languages
Chinese (zh)
Inventor
Hisao Sakurai
Original Assignee
Mitsubishi Electric Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mitsubishi Electric Corp filed Critical Mitsubishi Electric Corp
Application granted granted Critical
Publication of TW462142B publication Critical patent/TW462142B/en

Links

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02MAPPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF
    • H02M5/00Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases
    • H02M5/40Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases with intermediate conversion into dc
    • H02M5/42Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases with intermediate conversion into dc by static converters
    • H02M5/44Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases with intermediate conversion into dc by static converters using discharge tubes or semiconductor devices to convert the intermediate dc into ac
    • H02M5/453Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases with intermediate conversion into dc by static converters using discharge tubes or semiconductor devices to convert the intermediate dc into ac using devices of a triode or transistor type requiring continuous application of a control signal
    • H02M5/458Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases with intermediate conversion into dc by static converters using discharge tubes or semiconductor devices to convert the intermediate dc into ac using devices of a triode or transistor type requiring continuous application of a control signal using semiconductor devices only
    • H02M5/4585Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases with intermediate conversion into dc by static converters using discharge tubes or semiconductor devices to convert the intermediate dc into ac using devices of a triode or transistor type requiring continuous application of a control signal using semiconductor devices only having a rectifier with controlled elements
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02MAPPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF
    • H02M5/00Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases
    • H02M5/40Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases with intermediate conversion into dc
    • H02M5/42Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases with intermediate conversion into dc by static converters
    • H02M5/44Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases with intermediate conversion into dc by static converters using discharge tubes or semiconductor devices to convert the intermediate dc into ac
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02MAPPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF
    • H02M7/00Conversion of ac power input into dc power output; Conversion of dc power input into ac power output
    • H02M7/42Conversion of dc power input into ac power output without possibility of reversal
    • H02M7/44Conversion of dc power input into ac power output without possibility of reversal by static converters
    • H02M7/48Conversion of dc power input into ac power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode
    • H02M7/53Conversion of dc power input into ac power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a triode or transistor type requiring continuous application of a control signal
    • H02M7/537Conversion of dc power input into ac power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a triode or transistor type requiring continuous application of a control signal using semiconductor devices only, e.g. single switched pulse inverters
    • H02M7/5387Conversion of dc power input into ac power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a triode or transistor type requiring continuous application of a control signal using semiconductor devices only, e.g. single switched pulse inverters in a bridge configuration
    • H02M7/53871Conversion of dc power input into ac power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a triode or transistor type requiring continuous application of a control signal using semiconductor devices only, e.g. single switched pulse inverters in a bridge configuration with automatic control of output voltage or current
    • H02M7/53873Conversion of dc power input into ac power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a triode or transistor type requiring continuous application of a control signal using semiconductor devices only, e.g. single switched pulse inverters in a bridge configuration with automatic control of output voltage or current with digital control

Landscapes

  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Inverter Devices (AREA)

Abstract

An inverter system whose control program can be written easily conforming to a variety of specifications. The system comprises a control unit and a display (6) such as a parameter unit having a display section and an input section. The control unit includes: a CPU (1) as an arithmetic means for controlling a converter section (31) and an inverter section (33); a memory (2); a memory (3) as a first memory section for storing an inverter control basic program; a parameter storage section (4) for storing parameters; and an APS/W storage section as a second storage unit for storing a plurality of inverter control application programs. The inverter control application programs are transferred from outside the inverter system via a communication means to the APS/W storage section (5).

Description

4 6 2 14 2 A7 B7 經滴部中央榡準局β.τ消合作社印^ 五、發明説明 ( 1 ) I 技 術 範 阐 1 I 本 發 明 為 有 闞 於 具 有 相 交 流 電 源 變 換 為 直 流 電 1 1 I 力 之 換 流 器 (C on v e r t er*)部 Μ及將直流電力平滑化( 去 除 請 1 1 ί 漣 波 ) 之 平 滑 電 容 器 Η 及 將 該 平 滑 之 直 流 電 力 變 換 為 可 閱 I -j, 讀 jib 1 I m 頻 率 1 可 變 電 壓 之 交 流 電 力 之 反 換 器 (i η ν e r t e Γ ) 部 Μ η ϊέ 1 \ 之 1 I 及 控 制 前 述 換 流 器 部 與 前 述 反 換 器 部 之 控 制 部 等 由 此 使 注 意 畢 ! 1 馬 達 施 行 可 變 換 驅 動 之 反 換 器 裝 置 者 〇 項 再 1 填 Μ 杵 技 術 寫 本 百 裝 I 第 7 圖 為 表 示 以 往 之 反 換 器 裝 置 之 構 成 之 圖 〇 1 1 I 圖 中 30為 三 相 父 流 電 源 3 1為 由 三 相 交 流 電 源 30供 1 1 I 給 之 交 流 電 力 變 換 為 直 流 電 力 之 換 流 器 部 32為 使 該 直 流 1 1 訂 I 電 力 平 滑 化 之 平 滑 電 容 器 33為 該 平 滑 化 之 直 流 電 力 變 換 為 可 變 頻 率 ? 可 變 電 壓 之 交 流 電 力 之 反 換 器 部 * 34為 CPU 1 1 > 3 5為 由 RAM 構 成 之 記 憶 器 36為 將 控 制 反 換 器 裝 置 之 控 1 | 制 用 程 式 之 反 換 器 控 制 S/W記憶之記憶器- -般由ROM梅 成 〇 ! 再 者 37為 記 憶 依 據 反 換 器 裝 置 之 運 轉 規 範 設 定 之 參 數 ( J I pa r a me t e Γ ) 之 參 數 記 憶 部 〇 1 1 ί 控 制 換 流 器 部 31 及 反 換 器 部 33 之 控 制 部 為 由 CPU34 1 , 記 憶 器 35 • 記 憶 器 36 參 数 記 憶 部 37等 所 構 成 〇 1 38為 具 有 表 示 反 換 器 装 置 之 運 轉 '狀 態 或 參 數 之 設 定 1 I 狀 態 等 之 顯 示 部 及 資 科 之 設 定 或 輸 入 指 令 之 輪 人 部 之 參 數 I | 元 件 (P a r a id e t e r U η 1 t ) 等 之 顯 示 器 40為 馬 達 0 1 I 在 Μ 往 之 反 換 器 装 置 CPU34 為 由 記 憶 器 36 讀 出 之 I 反 換 器 控 制 S/ W 程 式 依 據 設 定 在 參 數 記 憶 部 37 之 各 種 參 本紙張尺/1述川中國®家榡蜱(rNS ) Λ4規格(2ΙΟΧ 297公釐} 1 39 976 6 4 2 14 2 A7 B7 五、發明説明(2 ) 數實施即可以控制反換器裝置*由此輪出可變頻率,可變 電壓之交流電力,由此馬達胞行可變速驅動。 - - - 1T-J Ι^ϋ ^^^1 ^^1. --- "V (請先閱讀背面之注意事項再填寫本頁) 在於前所述Μ注之反換器裝置*係成為依據做為反換 器控制S/1/預先記憶於記憶器36之控制用程式動作之構成 。由於此,具有遇有需要預先記憶於反換器裝置之控制用 程式無法控制之特殊之運轉之情況,必須另外製成專用之 控制用程式*做為反換器控制S/W組入於反換器装置之問 題。 再者,為能對應於特殊之蓮轉需要之情況,對於反換 器預先將動作可能之控制用程式全部安裝時,必須增加記 憶器之記憶容量,再者•在反換器裝置之運轉時亦有實施 時間延長等問題。 本發明為,為解決前所述問題而創作者,其目的在於 提供容易對應於多樣之用途之反換器裝置。 發明夕概要 經荊部中夾橾準局Θ工消合竹社印" 在本發明之反換器裝置中,在於具有三相交流電源變 換為直流電力之換流器部,以及將該直流電力平滑化之平 滑電容器,Μ及該直流電力變換為可變頻率,可變電壓之 交流電力之反換器部,以及控制前述換流器部與前述反換 器部之控制部等*由此馬達施行可變速Ρ動之反換器裝置 中, 將該控制反換器装置之控制程式,分離為處理共同之 基本性能之反換器控制用基本程式及規範上處理不同控制 之反換器控制用應用程式(app丨ication program)之同時 本纸張尺度速川中阉K家標呤(「NS ) Λ4规格(210 X 297公楚) 9 3 9 9 7 6 rc 4 2 142 A7 B74 6 2 14 2 A7 B7 Printed by the Central Ministry of Standards and Technology β.τ Consumer Cooperative Cooperative Association ^ V. Description of the Invention (1) I Technical Exposition 1 I The present invention is designed to convert phase AC power to DC 1 1 I Power converter (C on verter *) part M and smoothing capacitor for smoothing the DC power (remove the 1 1 ripple), and convert the smoothed DC power into readable I-j, read jib 1 I m frequency 1 variable-voltage AC power inverter (i η ν erte Γ) section M η ϊ 1 1 of 1 I and the control section that controls the aforementioned converter section and the aforementioned inverter section, etc. Make your attention complete! 1 The motor implements the inverter-driven inverter converter device. Term 1 and then fill in the technology. This is the first installment. The seventh figure is a diagram showing the structure of the conventional inverter device. 01 1 I In the figure, 30 is a three-phase parent current power source 3 1 is a converter unit that converts AC power supplied by the three-phase AC power source 1 1 I to DC power. 32 is a smoothing capacitor that smooths the DC 1 1 power. 33 is the smoothed DC power converted to a variable frequency? Variable voltage AC power inverter section * 34 is a CPU 1 1 > 3 5 is a memory composed of RAM 36 is a control inverter device Control 1 | The memory of the S / W memory controlled by the inverter of the manufacturing program--generally by the ROM Mei! 37, and the parameters are set according to the operating specifications of the inverter device (JI pa ra me te Γ) The parameter memory section 〇 1 1 ί The control section for controlling the inverter section 31 and the inverter section 33 is composed of the CPU 34 1, the memory 35 • the memory 36 and the parameter memory section 37 and the like. Indicates the status or parameters of the operation of the inverter device Setting 1 I status display, and the parameter setting or input of the wheel man department parameter I | display (parameter eter U η 1 t), etc. is the motor 0 1 I and vice versa The device CPU34 is an I-inverter controlled by the memory 36 to control the S / W program according to various parameters set in the parameter memory 37. Paper ruler / 1 Chuan China® house tick (rNS) Λ4 specification (2ΙΟχ 297 Mm} 1 39 976 6 4 2 14 2 A7 B7 V. Description of the invention (2) The inverter device can be controlled by the implementation of the number *. As a result, alternating-current power of variable frequency and variable voltage is generated, so that the motor can run Variable speed drive. ---1T-J Ι ^ ϋ ^^^ 1 ^^ 1. --- " V (Please read the precautions on the back before filling this page) The inverter device * M mentioned above is It is based on the structure of the control program S / 1 / which is stored in the memory 36 in advance as a control program. Because of this, there are some special operations that need to be stored in advance in the control program of the inverter device, so a special control program * must be made separately as the inverter control S / W set in the inverter. Problems with the converter device. Furthermore, in order to cope with the special needs of the lotus root, when the control programs for possible actions are installed in the inverter in advance, it is necessary to increase the memory capacity of the memory. Furthermore, • during the operation of the inverter device There are also issues such as extended implementation time. The present invention has been made by the creators to solve the aforementioned problems, and an object thereof is to provide an inverter device that can be easily adapted to various applications. SUMMARY OF THE INVENTION The invention is summarized in the section of the Jing Department. The "Industrial Transformer" is incorporated in the "Inverter Device" of the present invention, which includes a converter section for converting a three-phase AC power source into DC power, and the DC Smoothing capacitors for power smoothing, M and the DC power are converted into variable frequency, variable voltage AC power inverter parts, and the control part that controls the inverter part and the inverter part. * In the motor-operated variable-speed inverter converter device, the control program of the control inverter device is separated into a basic program for inverter control that handles common basic performance and an inverter converter that handles different controls in the specification. Application program (app 丨 ication program) at the same time the size of the paper Kawasaki Kazunori standard "(NS) Λ4 specification (210 X 297) Chu 3 2 9 7 6 rc 4 2 142 A7 B7

鯉湞部中央標準局兵工消资合作社印Y 五、發明説明 ( 3 ) 1 I * 將 反 換 器 控 制 用 基 本 程 式 記 憶 於 第 1 記 憶 部 , 反 換 器 控 1 1 制 用 應 用 程 式 由 反 換 器 裝 置 之 外 部 經 過 通 信 裝 置 向 第 2 記 1 1 憶 部 傳 送 之 方 式 構 成 者 〇 r—V I I 請 I 1 再 者 第 2 記 憶 部 為 有 多 数 記 憶 反 換 器 控 制 用 應 用 先 鬩 1 1 讀 1 程 式 之 可 能 者 0 背 1 1 之 \ 再 者 具 備 Μ 參 數 記 憶 部 使 反 換 器 控 制 用 應 用 程 式 i I I 可 否 實 施 之 設 定 成 為 可 能 者 0 事 項 再 1 1 再 者 具 備 以 參 數 記 憶 部 使 反 換 器 控 制 用 應 用 程 式 填 寫 本 袈 之 實 施 優 先 順 位 及 實 施 處 理 時 間 間 隔 之 設 定 成 為 可 能 者 〇 頁 1 1 再 者 反 換 器 控 制 用 應 用 程 式 之 實 施 之 可 否 實 施 優 1 1 先 順 位 及 實 施 處 理 時 間 間 隔 之 設 定 可 >λ 由 反 換 器 裝 置 之 外 i I 部 經 過 通 信 裝 置 對 於 參 數 記 憶 部 設 定 者 0 再 者 亦 具 備 表 訂 I 示 反 換 器 控 制 用 應 用 程 式 之 安 裝 狀 態 實 施 之 可 否 實 1 | 優 先 順 位 及 實 m 處 理 時 間 間 隔 之 顯 示 器 等 者 0 1 1 I 圖 丽 之 1 單 說 且 1 I 第 1 IBI 圖 為 1 表 示 本 發 明 之 一 實 施 例 之 反 換 器 装 置 之 構 ’丨 成 之 圖 〇 1 第 2 圖 為 > 本 發 明 之 實 施 例 之 反 換 器 機 置 之 方 塊 圖 i I 第 3 圖 為 > 表 示 本 發 明 之 一 實 施 例 Ζ 反 換 器 裝 置 之 應 1 1 | 用 表 格 (a P P 1 ί c a t i on t a b 1 e )之構成之圜 > [ 1 第 4 nat 國 為 * 表 示 本 發 明 之 一 實 施 例 之 反 換 器 裝 置 之 向 1 1 量 表 格 (v e C t 0 Γ t a b 1 e ) 之 構 成 之 圖 0 I 1 第 5 Π5Π 國 為 » 表 示 本 發 明 之 一 實 施 例 之 反 換 器 装 置 之 表 1 1 本紙烺尺度询州中SS家标_ { (’NS ) Λ4規格(210X297公釐} 3 3 9 97 6 462142 A7 經濟部中火標準局S-T·消fr合作社印" B7五、發明説明(4 ) 示例之圖。 第6圖為,本發明之一實施例之反換器装置之流程圖 Ο , 第7圖為•表示Μ往之反換器裝置之構成之圖。 發明之管施例 g确例1 第1圖為·表示本發明之一實施例之反換器裝置之構 成之圖。圖中· 30〜33,40為,同於前述Μ注裝置•在此 省略重覆之說明。1為做為控制換流器部31及反換器部33 之演算裝置之CPU,2為由RAM構成之記憶器,3為做為記憶 反換器控制用程式之第1記憶部之記憶器,4為記憶依據反 換器裝置之蓮轉規範設定之參數之參數記憶部,5為做為 記憶多數之反換器控制用應用程式之第2記憶部之APS/W記 憶部。 本實腌例之反換器裝置之控制部為*由CPU1·記憶器 2,記憶器3*參數記憶部4* APS/W記憶器5等所構成。 6為•具有表示反換器裝置之運轉狀態或參數之設定 狀態等之顯示部Μ及資料之設定與指令之輸人之輸入部等 之參數元件顯示器,7為經由通信電線等接線於反換器装 置之計算櫬(個人電腦)。 在本實腌例•控制反換器裝置之控制用程式分離為* 處理共同之基本性能之反換器控制用基本程式(以下稱為 控制用基本S/W)及依據其規範處理不同之控制之反換器控 制用應用程式(Κ下稱為控制用APS/W)之同時’控制用基 本紙张尺度適用中闽围家標中(('NS ) Λ4规格(210Χ 297公f ) A 3997 6 (請先閱讀背面之注*$項再填寫本頁) 裝. 訂 4 6 2 14 2 A7 經消部中次標卑,局負工消於合忭社印¥ B7五、發明説明(5 ) 本S/W預先組入於反換器裝置之記憶器3,反換器裝置之目 的之運轉所需之控制用APS/W由反換器装置之外部經過通 信装置由計算機(涸人電腦)7向APS/W記憶部5轉送,寫入 之方式對應於多樣化之規範,可獲得容易構成控制反換器 裝置之控制用程式之反換器裝置。 苐2圖為,本發明之一實施例之反換器裝置之方塊圖 〇 圖中,1為CPU,11為預先組人於記憶器3之控制用基 本S/!i,12為設定於參數記憶部4之反換器裝置之運轉規範 之參數,13為管理控制用APS/W之應用管理S/W( application manager S/W)_預先組人於記憶器3。14為收 容控制用APS/W之各種實胞資料之實施順位。處理時間記 錄器,15〜18為寫人於APS/W記憶部5之控制用APS/V 。在 此* 15為控制用APS/W-A* 16為控制用APS/W-B,17為控制 用 APS/V-C, 18為控制用 APS/W。 對於APS/W記憶部5可Μ記憶多數之控制用APS/W *由 應用管理S/W13管理控制用APS/W之方式構成,因此可Μ獲 得對應於多數之規範之反換器裝置。 第3圖為,表示本發明之一實施例之反換器裝置之應 用表格之構成之圖。在此,應用表格為•表示控制用 APS/W之各種實施資料之設定者。 圖中,21為指定控制用APS/W之實腌優先順位之實施 優先順位資料* 22為指定控制用APS/W之實施處理時間間 隔之實腌處理時間間隔資料,23為控制用APS/W之名稱* 本紙張尺度過川中國围家標冷(('NS ) λ4规格(2丨οX 297公f ) 5 3 99 76 (請先閱讀背面之注意事項再填寫本頁) 462142 A7 B7 經消部中央椋孳局Μ工消贽合作.社印則4 五、發明説明 ( 6 ) 1 I 24為 指 定 控 制 用 APS/ W之實施可否之實施可否資料 25 為 1 1 I 指 定 控 制 用 APS/W之向量號碼之向量號碼資料 > 1 1 在 此 構 成 m 用 表 格 之 實 施 優 先順位 資 料 2 1 實 施 處 -~-V 1 I 請 1 I 理 時 間 間 隔 資 料 22 實 施 可 否 資 料 24,向 量 號 碼 資 料 25為 先 閱 1 I 讀 1 I 1 由 參 數 記 憶 部 34謓 出 由 此 收 容 於實施 順 位 1 處 理 時 間 背 ιέ 1 J 之 1 記 憶 部 14 〇 注 意 1 ψ 1 由 於 控 制 用 APS/W之實施之可否|控制用APS/W之 實 施 項 真 1 填 優 先 順 位 及 實 施 處 理 時 間 間 隔 等 可 以設定 於 參 數 記 憶 部 之 本 策 1 方 式 構 成 因 此 可 Μ 使 控 制 用 APS/W之使用多樣化< > 頁 ! 1 再 者 控 制 用 APS/W實施之可否 > 控制用APS/W 之 實 施 1 1 優 先 順 位 及 實 施 處 理 時 間 間 隔 可 以由反 換 器 裝 置 之 外 部 1 1 經 過 通 信 裝 置 向 參 數 記 憶 部 予 以 設 定者, 因 此 控 制 用 訂 I APS/W之使用之變更容易£ 1 I 第 4 圖 為 表 示 本 發 明 之 一 實 施例之 反 換 器 裝 置 中 之 1 1 t 向 量 表 格 之 構 成 之 圈 0 在 此 向 量 表格為 表 示 控 制 用 1 ! APS/W之向量號碼與實施位址資料之對應者 > J 圖 中 25為 指 定 控 制 用 APS/W 之向量 號 碼 之 向 量 號 碼 1 資 料 26為 控 制 用 APS/V之實胞位址資料 1 在 此 構 成 向 量 表 格 之 向 量 號 碼資料 25 * 控 制 用 1 I APS/W之實腌位址資料26為 由參數記憶部4讀 出 由 此 收 1 1 容 於 實 施 順 位 _ 處 理 時 間 記 憶 部 14 0 I 1 1 第 5 圖 為 » 表 示 本 發 明 之 實 施例之 反 換 器 裝 置 中 之 1 1 表 示 例 之 圖 0 团 關 中 6 為 顯 示 器 27為表 示 反 換 器 装 置 之 1 1 運 轉 狀 態 或 參 数 之 設 定 狀 態 等 之 顯 示部, 28為 資 料 之 設 定 I 1 本紙張尺度诚州中國囤家標嘩(rNS ) Λ4規格(2丨0X 297公釐) 6 3 997 6 4 6 2 Ί 4 2 Α7 Β7 五、發明説明(7 )或指令之輸入之輸入部。在此*表示實施中之控制用 APS/W之一例(API , AP2)。 由於具備表示控制用APS/W之安裝狀態,實_之可否 ,實腌優先順位及實施處理時間間隔之顯示器,因此容易 確認控制用APS/ΐί之動作,由此可Μ構成最適宜之控制用 程式。第6匾為,本發明之一實施例之反換器裝置之流程圖 0 其次,說明本發明之一實腌例之反換器装置之動作。 當投入反換器裝置之電源時,經由CPU1,腌行組人於 記憶器3之控制用基本S/W之讀人*其次將記憶在參數記憶 部4之參數向記憶器2讀入。缜之,由步驟S20,實施應用管理S/W12。 由步驟S21判斷APS/W記憶部5是否安裝控制用APS/W。 未安裝控制用APS/W之情況為,在步驟S22由計算機( 個人電腦)7,經過串列通信等裝置,將控制用APS/W向 APS/W記憶器5轉送,由此寫人。 請 先 閱 讀 背 <s 冬 * 事 項 再 填 本衣 頁Printed by the Central Standards Bureau of the Ministry of Commons and Industry of the People's Republic of China, Y. V. Description of the invention (3) 1 I * The basic program for inverter control is stored in the first memory section. The converter device ’s exterior is transmitted to the 2nd memory via the communication device. 1r-VII Please I 1—and the 2nd memory unit is the application for controlling the inverter with most memories. 1 1 read 1 It is possible to program 0 back 1 1 \ It also has the M parameter memory section to enable the setting of the inverter control application i II can be implemented 0 matters again 1 1 It is also equipped with a parameter memory section to enable the inverter It is possible for the control application to fill in the implementation priority of this card and set the processing time interval Page 1 1 Whether the implementation of the inverter control application can be implemented. 1 1 Priority setting and implementation of the processing time interval can be set.> Λ from the outside of the inverter device through the communication device to the parameter memory section. The setter 0 also has a setting I indicating whether the installation status of the application for the inverter control application can be implemented. 1 | Priority and real-time display of the processing time interval, etc. 0 1 1 I 1 I The first IBI diagram is a diagram showing the structure of an inverter device according to one embodiment of the present invention. The second diagram is a block diagram of an inverter unit according to an embodiment of the present invention. Fig. 3 is an illustration of the application of a Z inverter device according to an embodiment of the present invention. 1 1 | Composition of a form (a PP 1 cati on tab 1 e) > [1 The 4th nat country is * table A diagram of the structure of the direction 1 1 quantity table (ve C t 0 Γ tab 1 e) of the inverter device according to an embodiment of the present invention. 0 I 1 5th country Π5Π represents the inversion of an embodiment of the present invention. Table of the device 1 1 The paper size of the paper is inquired about the SS family standard in China_ {('NS) Λ4 size (210X297 mm) 3 3 9 97 6 462142 A7 ST · China Consumer Standards Bureau of the Ministry of Economic Affairs ST · fr fr Cooperative society print " B7 V. Description of the invention (4) A diagram of an example. FIG. 6 is a flowchart of an inverter device according to an embodiment of the present invention, and FIG. 7 is a diagram illustrating the configuration of the inverter device in the M direction. Embodiment of the invention g Confirmation Example 1 Fig. 1 is a diagram showing the structure of an inverter device according to an embodiment of the present invention. In the figure, 30 to 33 and 40 are the same as the M injection device described above. The repeated explanation is omitted here. 1 is a CPU serving as an arithmetic device for controlling the inverter section 31 and the inverter section 33, 2 is a memory composed of RAM, and 3 is a memory as a first memory section for storing a program for controlling the inverter , 4 is a parameter storage section for memorizing parameters set in accordance with the specifications of the converter of the inverter device, and 5 is an APS / W storage section for memorizing the majority of the inverter control application programs. The control unit of the inverter device of this example is composed of CPU1 · memory 2, memory 3 * parameter memory 4 * APS / W memory 5 and so on. 6 is a parameter element display with a display unit M that indicates the operating status of the inverter device or parameter setting status, data input and instruction input unit, etc., 7 is connected to the inverter via a communication cable, etc. Computing device (PC). In this example, the control program for controlling the inverter device is separated into * The basic program for inverter control that handles common basic performance (hereinafter referred to as the basic S / W for control) and handles different controls according to its specifications. Inverter control application (hereinafter referred to as control APS / W) and the basic paper size for control are applicable to the Zhongminwei family standard (('NS) Λ4 specification (210 × 297 male f) A 3997 6 (Please read the note * $ on the back before filling in this page) Pack. Order 4 6 2 14 2 A7 The Ministry of Economic Affairs has a low bid, and the work load has been printed by Hexie Society. ¥ B7 V. Invention Description (5 ) This S / W is incorporated into the memory 3 of the inverter device in advance, and the control APS / W required for the purpose of the inverter device operation is from the outside of the inverter device through a communication device from a computer (涸 人 Computer ) 7 Transfer to the APS / W memory section 5. The writing method corresponds to a variety of specifications, and an inverter device that can easily constitute a control program for controlling the inverter device can be obtained. 苐 2 The picture shows one of the inventions The block diagram of the inverter device of the embodiment. In the figure, 1 is a CPU, and 11 is a control group of a person in the memory 3 in advance. With basic S /! I, 12 is the parameter of the operation specification of the inverter device set in the parameter storage section 4, and 13 is the application management S / W (application manager S / W) _A group of management and control APS / W The person in the memory 3.14 is the implementation order of the various cell data of the APS / W for containment control. The processing time recorder, 15 ~ 18 are the APS / V for the person in the APS / W memory 5 control. Here * 15 for control APS / WA * 16 for control APS / WB, 17 for control APS / VC, 18 for control APS / W. APS / W memory section 5 can store most control APS / W * It is composed of the application management S / W13 management control APS / W, so it is possible to obtain the inverter device corresponding to most specifications. Fig. 3 shows the inverter device according to an embodiment of the present invention. A diagram of the structure of the application form. Here, the application form is the setter that indicates the various implementation data of the control APS / W. In the figure, 21 is the implementation priority order that specifies the actual priority order of the control APS / W * 22 is the actual processing time interval data of the designated processing time interval of the control APS / W, 23 is the control time of the APS / W Name * This paper is scaled through Sichuan China House Standard Cold (('NS) λ4 size (2 丨 ο X 297g f) 5 3 99 76 (Please read the precautions on the back before filling out this page) 462142 A7 B7 Economics Department The central government bureau ’s industrial and commercial cooperation. Seal of the society 4 V. Description of the invention (6) 1 I 24 is the information on whether the implementation of designated control APS / W can be implemented 25 25 1 1 I is the designated control APS / W Vector number data of vector numbers> 1 1 Here constitutes the implementation priority information of the table for m 2 2 Implementation place-~ -V 1 I Please 1 I Data of time interval 22 Implementation availability data 24, vector number data 25 first Read 1 I Read 1 I 1 is extracted from the parameter memory 34 and is stored in the implementation order 1 Processing time 1 1 of the 1 memory 14 14 Note 1 ψ 1 Whether the implementation of the control APS / W can be used | Control APS / W implementation item 1 The priority order of filling and the processing time interval can be set in the parameter storage section. This method is structured so that the use of control APS / W can be diversified < > page! 1 Furthermore, the control implemented by APS / W Can > Implementation of control APS / W 1 1 The priority order and the implementation processing time interval can be set by the outside of the inverter device 1 1 through the communication device to the parameter memory, so the use of control order I APS / W The change is easy. 1 I Figure 4 shows the circle of the structure of the 1 1 t vector table in the inverter device of one embodiment of the present invention. The vector table is a vector number indicating 1! APS / W for control. Correspondence with the implementation address data> J In the figure, 25 is the vector number 1 designating the vector number of the control APS / W1. Data 26 is the real cell address data of the control APS / V1. The vector that forms the vector table here number Data 25 * 1 I APS / W actual picking address data 26 for control is read by the parameter memory section 4 and thus received 1 1 It is included in the implementation order _ Processing time memory section 14 0 I 1 1 The fifth picture is » In the inverter device of the embodiment of the present invention, 1 1 shows an example of the table. 0 Tuanguanzhong 6 is a display 27. It is a display part indicating the operating status or parameter setting status of the inverter device 1 and 28 is data Setting I 1 This paper standard Chengzhou China hoarding standard (rNS) Λ4 specifications (2 丨 0X 297 mm) 6 3 997 6 4 6 2 Ί 4 2 Α7 Β7 5. Input of invention description (7) or instructions Of the input department. Here * indicates an example of APS / W for control (API, AP2) in implementation. Since it has a display that indicates the installation status of control APS / W, whether it is real or not, the priority of actual picking and the implementation of the processing time interval, it is easy to confirm the action of control APS / ΐί, which can constitute the most suitable control Program. The sixth plaque is a flowchart of the inverter device according to an embodiment of the present invention. 0 Next, the operation of the inverter device according to one embodiment of the present invention will be described. When the power of the inverter device is turned on, via the CPU1, the reader of the basic S / W for controlling the memory 3 in the memory group 3 * reads the parameters stored in the parameter storage section 4 into the memory 2. In other words, in step S20, application management S / W12 is implemented. In step S21, it is determined whether the APS / W storage unit 5 is equipped with the control APS / W. In the case where the control APS / W is not installed, the computer (personal computer) 7 transfers the control APS / W to the APS / W memory 5 via a serial communication device or the like in step S22, thereby writing the person. Please read the back < s winter * items before filling in this page

II 經消部中央標卑局兵工消贽合作社印紀 料 資 隔 間 間 時 , 理 3 處 2 S 裝 驟安 步及 在21 料 資 位位 順 順 先施 優實 施於 實容 之收 4此 由 憶 記 2 數 參 在 定 設 出 讀 部 憶 記 間 時 ίι 理 處 驟 步 在 責 否 可 施 實 之 4 部 憶 記 歟 參 於 定 設 將 別 分 料 資 位 Ζ 否 實_ W π施“® pt% It 莨 I 實 於 容纟22 收2料 5 格 ί 42二 料 j 隔 資應間 碼 間 S ΞΪΙ 向31處 , 第 施 24。實 部 憶 記 間 時 理 處 料 資 位 順 先 優 施 實 述 前 由 碼 號 量 向 本紙张尺度適州中國因家捸中-((’NS ) Λ4規格(210X297公釐) 7 39976 462142 A7 B7 經濟部中夾樣本灼負1¾卟合作.杜印製 五、發明説明 1 ( 8 ) I 資 料 25及 懕 用s/y名 稱23等所構成 0 1 1 在 步 驟 S25 , 將設定於參數記憶部4之向 量 號 碼 資 料 1 25 » 控 制 用 APS/W 之實施位址資料26收容於實 施 順 位 • 處 ! 1 請 1 1 理 時 間 記 憶 部1 4。 第4圖所示向量表格為•分 別 由 向 量 號 先 閱 1 I 讀 1 碼 責 料 25 控制用APS/W之實跑位 址資料26構成c 背 面 1 Ί 之 1 在 步 驟 S26 - 經 由APS/W安裝處理完了 ,施 加 CPU 復 歸 音 1 事 1 (「 e s e t )後 回至 步 驟S20,再度由應用管理S/W1 2實施 5 項 4 I 由 步 驟 S21判 斷 APS/tf記憶部5安裝控制用APS/W 之 情 況 寫 本 裝 為 由 步 驟 S27, 胞 行應用校對(a ppl ication c h e c k) 由 頁 ί 1 實 施 順 位 處理時間記憶部14探索所實施之控 制 用 APS/W [ 1 0 (探索中 由實 施 優先順位髙之 控制用APS/W先 施 行 探 索 1 | 〇 ) 3 訂 I 在 步 m S28, 施 行是否實施該 控制用APS/W 之 判 定 處 理 1 1 I 0 在 第 3圖之應用 表 格之實施可否 資料24之檷中 由0 實 1 1 I 施 否 1 : 實施可 表示之。 1 1 在 步 驟 S29 * 由 實施順位•處 理時間記憶部14 讓 出 實 1 施 優 先 順 位 資料2 1 實施處理時間間隔資料22 0 ί I 在 步 驟 S30, 實 腌控制用基本 s/y 11 - | 在 步 驟 S31 * 實 施最高優先順 位之控制用APS/W 0 I 在 步 驟 S32 * 實 腌中之控制用 APS/W ,例如 由 第 5 ΙΞΙ 圖 所 ί 1 [ 示 表 示 〇 1 1 在 步 驟 S33 * 實 腌中之控制用 APS/ W之實施 處 理 時 間 間 1 1 隔 資 科 22與 該控制用APS/W之實施開始之時間 對 於 現 在 之 1 1 時 間 施 行 比 較判定< >實施時間未完了之情況為 f 回 至 步 驟 1 1 本紙張尺度珣川中國K1家標今(CNS ) Λ4^格(210X297公釐) g 3 9 9 7 6 6 2 14 2 A7 B7 ¾¾部中央掠準杓OC.T-消资合作社印β 五、發明説明 ( 9 ) I S3 1 繼續施行實施中之控制 用 APS/W 〇 1 1 在 步 驟 S33 判斷為實施時間完了 之 情 況 為 t 繼 績 由 步 1 驟 S34 施行次高實胞優先順 位之控制用A P S / V 〇 1 I 請 1 J 在 步 驟 S35 實施中之控 制用APS/W 例 如 由 第 5 圖 所 先 聞 1 | 4 1 示 表 示 0 背 1 Ί 之 1 在 步 驟 S36 實施中之控 制用APS/W 之 實 施 處 理 時 間 間 意 ί I 隔 資 料 22與 該控 制用APS/W之實施開 始 之 時 間 對 於 現 在 之 事 項 再 1 1 時 間 施 行 比 較判 定。實施時間未完了 之 情 況 為 1 回 至 步 驟 填 本 裝 S34 繼纊施行實腌中之控制 用 APS/W 〇 頁 -—^ 1 1 在 步 驟 S36 判斷為實施時間完了 之 情 況 為 ί 在 後 續 之 1 1 步 驟 S37 實施顒位·處理時 間記憶部1 4確認控制用 1 | APS/W 之 登 錄, 判斷是否已完全探索 完 了 〇 探 索 未 完 了 之 訂 I 情 況 為 回 至步 驟S31 ,施行 未實施之控制用APS/W中 之 實 1 1 1 施 優 先 順 位 較高 之控制用A P S / W。 1 1 1 由 步 驟 S 3 7判斷所登錄之 控制用APS/W之 全 部 已 探 索 完 1 f 了 之 情 況 為 ,回 至步驟S29 >再度由 實 施 順 位 • 處 理 時 間 :个 1 記 憶 部 14 讀 出實 施優先順位資料21 · 實 施 處 理 時 間 間 隔 貢 ί 料 22 在後續之步驟S30實 施控制用基本S / W 1 1 由 步 驟 ! S31實施控制用APS/W。 I 丁 桊 h 利 用可 能幃 1 1 I 如 r. 刖 所 述, 本發明之反換器裝置 為 在 於 台 數 少 之 特 1 I 1 殊 用 途 或 試 製櫬 等專用系統之製成等 用 途 » 可 >λ 容 易 對 應 1 1 於 汎 用 >λ 外 之多 樣化之用途 5 i 1 元 件 簡 單 銳明 1 1 本紙悵尺度過川中SK家「NS) Λ4規格(2!〇x 297公釐) 9 3 9 97 6 462142 A7 五、發明説明(1G ) 1 反換器 2 換流器 經消部中戎樣準局OCJ.消贽合作.社印公 3 電 容 器 4 馬 達 5 記 llWf 憶 器 6 程 式 7 參 數 8 資 料 9 參 数 元 件 10 懕 用 程 式 11 方 塊 12 應 用 表 格 13 向 量 表 格 14 流 程 圖 15 個 人 電 腦 16 應 用 管 理 17 向 量 18 位 址 資 料 19 步 驟 20 串 列 2 1 應 用 22 復 歸 23 應 用 表 格校對 24 糸 統 ------ Nil - - -Λ*衣 ft------f {請先閲讀背面之注意事項再填寫本頁) 本紙張尺度適川中國阀家標爭U’NS ) Λ4規袼(210X 297公釐) 10 3 9 9 7 6II When the Ministry of Economic Affairs and Ministry ’s Central Bureau of Standards and Welfare Eliminates Cooperatives ’s printed materials and materials compartments, manage 3 2S installation steps and apply them at the 21st material level. There are 4 memorandums in the memorandum between the 2 reference parameters in the setting of the reading department, which can be carried out step by step, whether the responsibility can be implemented. W π Shi "® pt% It 莨 I is better than capacity 22, 2 materials 5 grids 42 42 materials j Separated application room code room S ΞΪI to 31, No. 24. The real part remembers the material management time Shun Xianyoushi explained from the code number to the paper size in Shizhou, China due to the size of the paper-(('NS) Λ4 size (210X297 mm) 7 39976 462142 A7 B7 The sample of the Ministry of Economic Affairs was negative 1¾ porcine cooperation. Du Printed 5. Description of the invention 1 (8) I data 25 and s / y name 23, etc. 0 1 1 In step S25, the vector number data set in the parameter memory 4 1 25 »APS / W for control The implementation address data 26 is contained in the implementation order • Department! 1 Please manage the time memory 1 1 1 4. The vector table shown in Figure 4 is: • The vector number is read first 1 I read 1 code 25 25 APS / W actual running address data for control 26 constitutes c Back 1 No. 1 in step S26-After the installation process is completed via APS / W, apply the CPU reset sound 1 event 1 ("eset") and return to step S20, and then perform 5 items 4 in the application management S / W1 2 I judge APS / in step S21 In the case where the tf memory unit 5 installs the control APS / W, the writing is performed in step S27, and a cellular application check (a ppl ication check) is performed by the page. 1 The sequence processing time memory unit 14 explores the implemented control APS / W [ 1 0 (In the exploration, priority is given to the implementation of the control APS / W first implementation of the exploration 1 | 〇) 3 Order I in step mS28, whether to implement the control APS / W determination processing 1 1 I 0 in the third The application form of the application form in the figure is available in 0 of the 24 cases. 1 1 I No 1: Implementation can be expressed. 1 1 In step S29 * The implementation sequence and processing time storage unit 14 gives up the implementation 1 implementation priority data 2 1 implementation processing time interval data 22 0 ί I In step S30, the basic control s / y 11-| Step S31 * Implement the highest priority APS / W 0 I for control in step S32 * APS / W for control in the actual pickling, for example, as shown in Figure 5 ΙΞΙ 1 [Shown 〇1 1 In step S33 * Actual pickling The implementation time between the implementation of the control APS / W 1 1 The time between the implementation of the fund separation section 22 and the implementation of the control APS / W is compared with the current 1 1 time implementation judgment < > The implementation time is not completed f Go back to step 1 1 This paper is scaled by K1 of China, Sichuan (CNS) Λ4 ^ grid (210X297 mm) g 3 9 9 7 6 6 2 14 2 A7 B7 ¾ ¾ central scanning standard OC.T-elimination Cooperative cooperative seal β V. Description of the invention (9) I S3 1 Continue to implement the control APS / W 〇1 1 In step S33, it is judged that the implementation time is over t Follow-up APS / V for the control of the next highest cell priority from step 1 to step S34. 〇1 I Please 1 J APS / W for control in the implementation of step S35. For example, as shown in Figure 5 1 | 4 1 The display indicates 0 back 1 Ί 1 1 The implementation processing time of the control APS / W during the implementation of step S36. The time between the data 22 and the start of the implementation of the control APS / W is 1 1 time for the current matter. Perform comparative judgment. If the implementation time is not yet completed, go back to step 1. Fill in this package. S34 Follow the APS / W for control during actual pickling. ○ Page -— ^ 1 1 In step S36, it is determined that the implementation time is over. 1 Step S37 Implement the location and processing time storage unit 1 4 Confirm the registration of the control 1 | APS / W, and determine whether it has been completely explored. 0 The search for the unfinished order I. Return to step S31 to execute the control that is not implemented. APS / W 1 1 1 APS / W for control with higher priority. 1 1 1 It is judged in step S 3 7 that all the registered control APS / W have been explored 1 f. In the case of returning to step S29 > again by the implementation sequence • Processing time: 1 memory section 14 read Implementation priority data 21 · Implementation process time interval material 22 In the subsequent step S30, the basic S / W 1 for control is implemented by step! S31 is the control APS / W. I DING 桊 h Utilization possible 1 1 I As described in r., The inverter device of the present invention is a special 1 I 1 special application with a small number of units or the production of a special system such as a trial production unit »Available > λ is easy to cope with 1 1 for general use > λ for various applications 5 i 1 Simple and sharp components 1 1 The size of the paper is over SK in Chuanzhong "NS" Λ4 specification (2.0 × 297 mm) 9 3 9 97 6 462142 A7 V. Description of the invention (1G) 1 Inverter 2 Inverter by the Ministry of Consumers Zhong Rong Sample Standard Bureau OCJ. Consumer Cooperative. Co. Press 3 Capacitor 4 Motor 5 Record llWf Memory 6 Program 7 Parameter 8 Data 9 Parameter component 10 Application program 11 Box 12 Application form 13 Vector form 14 Flow chart 15 Personal computer 16 Application management 17 Vector 18 Address data 19 Step 20 Serial 2 1 Application 22 Reversion 23 Application form proofreading 24 System- ----- Nil---Λ * 衣 ft ------ f (Please read the precautions on the back before filling this page) This paper ruler Chuan Chinese valve suitable standard home indisputable U'NS) Λ4 eligible Regulation (210X 297 mm) 1039976

Claims (1)

ABCD 4 6 2 14 2 六、申請專利範圍 1. 一種反換器裝置,係具有三相交流電源變換為直流電 力之換流器部,K及使該直流電力平滑化之平滑電容 器,Μ及該直流電力變換為可變頻率·可變電壓之交 流電力之反換器部,Μ及控制前述換流器部與前述反 換器部之控制部·由此使馬達施行可變速驅動之反換 器裝置,其中 控制該反換器装置之控制用程式|分離為處理共 同之基本性能之反換器控制用基本程式及由規範而處 理不同控制之反換器控制用應用程式之同時,前述反 換器控制用基本程式收容於第1記憶部*前述反換器 控制用應用程式由前述反換器裝置之外部經過通信装 置尚第2記憶部轉送之方式構成為特徼者。 2. 如申請專利範圍第1項之反換器裝置,前述第2記憶 部為,可以記憶多數之前述反換器控制用應用程式為 特徵者。 3. 如申請專利範圍第1項之反換器裝置,僳具備參數記 憶部,由此可Μ設定前述反換器控制用應用程式可否 實施為特徵者。 4. 如申請專利範圍第1項之反換器裝置,係具備參數記 憶部,由此可以設定前述反換器控制用應用程式之實 施優先順位及實狍處理時間間隔為特徴者。 5. 如申請專利範園第3項或第4項之反換器裝置,前述 反換器控制用應用程式可否實施,實砲優先順位及實 胞處理時間間隔之設定可Μ由前述反換器裝置之外部 11 —---:----ά------IT------4 (請先鬩讀背面之注意事項再填寫本頁) 經濟部中央標举局負工消費合作社印製 本紙張尺度適用中國國家標準(CNS ) Λ4規格(210XM7公煃ί 3 9976 4 2 6 2 4 ABC 8 D 六、申請專利範圍 經過通信裝置對於前述參數記憶部設定為特激者。 6.如申請專利範圍第1項所記載之反換器裝置,具備表 示前述反換器控制用應用程式之安裝狀態*實施之可 杏,實施優先順位及實施處理時間間隔之顯示器為特 激者。 --,--=----裝------、1T------4 (請先閱讀背面之注意Ϋ項再填寫本頁) 經濟部中央標準局貝工消費合作社印製 3 99 7 6 本紙張尺度適用中國國家標準(CNS ) Λ4規格(210 X 2<37公釐)ABCD 4 6 2 14 2 6. Application scope 1. An inverter device is a converter unit with three-phase AC power source converted to DC power, K and a smoothing capacitor smoothing the DC power, M and the Inverter unit that converts DC power into variable frequency and variable voltage AC power, M and a control unit that controls the inverter unit and the inverter unit, thereby allowing the motor to perform a variable speed drive inverter Device, in which the control program for controlling the inverter device is separated into a basic program for inverter control that handles common basic performance and an application program for inverter control that handles different controls by specification, the aforementioned inverter The basic program for controller control is housed in the first memory unit. The aforementioned application program for inverter control is constituted as a special person by transferring it from the outside of the inverter device via the communication device to the second memory unit. 2. In the case of the inverter device of the first scope of the patent application, the second storage unit is characterized by being able to memorize most of the aforementioned inverter control application programs. 3. If the inverter device of the first scope of the patent application has a parameter memory section, it is possible to set whether the aforementioned application program for inverter control can be implemented as a feature. 4. If the inverter device of the first scope of the patent application is equipped with a parameter memory section, it is possible to set the implementation priority of the aforementioned inverter control application and the actual processing time interval as special ones. 5. If the inverter converter device of the patent application No. 3 or 4 is applicable, can the aforementioned inverter control application program be implemented, and the actual gun priority order and cell processing time interval can be set by the aforementioned inverter The outside of the device 11 -----: ---- ά ------ IT ------ 4 (Please read the precautions on the back before filling out this page) The paper size printed by the consumer cooperative is applicable to the Chinese National Standard (CNS) Λ4 specification (210XM7 public 3 3 9976 4 2 6 2 4 ABC 8 D) 6. The scope of the patent application is set as a special exciter for the aforementioned parameter memory by the communication device. 6. The inverter device described in item 1 of the scope of the patent application, which has the installation status of the aforementioned inverter control application * can be implemented, and the display that implements the priority order and the processing time interval is particularly exciting. -,-= ---- install ------, 1T ------ 4 (Please read the note on the back before filling in this page) Central Standards Bureau, Ministry of Economic Affairs, Shellfish Consumer Cooperative Printing 3 99 7 6 This paper size is applicable to China National Standard (CNS) Λ4 specification (210 X 2 < 37 mm)
TW087112862A 1998-07-16 1998-08-05 Inverter apparatus TW462142B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP1998/003210 WO2000004629A1 (en) 1998-07-16 1998-07-16 Inverter system

Publications (1)

Publication Number Publication Date
TW462142B true TW462142B (en) 2001-11-01

Family

ID=14208647

Family Applications (1)

Application Number Title Priority Date Filing Date
TW087112862A TW462142B (en) 1998-07-16 1998-08-05 Inverter apparatus

Country Status (7)

Country Link
US (1) US6335870B1 (en)
JP (1) JP3754092B2 (en)
CN (1) CN1114260C (en)
DE (1) DE19882631T1 (en)
GB (1) GB2345593B (en)
TW (1) TW462142B (en)
WO (1) WO2000004629A1 (en)

Families Citing this family (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10110223B4 (en) * 2000-03-10 2020-03-05 Sew-Eurodrive Gmbh & Co Kg Procedure for operation with a converter and converter
GB2377094B (en) * 2001-06-29 2003-07-30 Paul Morris Power converter
US6984950B2 (en) * 2002-09-23 2006-01-10 Siemens Energy & Automation, Inc. System and method for configuring a motor controller with an external device
JP3974065B2 (en) * 2003-03-27 2007-09-12 株式会社東芝 Processor
JP3722810B2 (en) * 2003-06-06 2005-11-30 ファナック株式会社 Motor drive device
DE10394311T5 (en) * 2003-09-30 2006-08-03 Mitsubishi Denki K.K. power converters
JP2006101675A (en) * 2004-09-30 2006-04-13 Mitsubishi Electric Corp Motor drive
CN100550591C (en) 2005-04-18 2009-10-14 株式会社安川电机 Frequency converter and programmer thereof
JP5468722B2 (en) 2006-02-24 2014-04-09 富士電機株式会社 Inverter device
KR100764779B1 (en) * 2006-03-14 2007-10-11 엘지전자 주식회사 Apparatus for supplying dc power source
DE102006049779A1 (en) * 2006-10-21 2008-05-21 Deere & Company, Moline Überladewagen
KR100959950B1 (en) * 2009-11-12 2010-05-26 김진만 Auxiliary apparatus for controlling inverter
US20120007887A1 (en) * 2010-07-08 2012-01-12 Shih-Min Chou Digital manipulator for inverter and image display method for digital manipulator
JP6037032B2 (en) 2013-09-27 2016-11-30 富士電機株式会社 Drive device
EP3082251B1 (en) * 2013-12-12 2023-06-28 Panasonic Intellectual Property Management Co., Ltd. Motor-driving apparatus
US10050575B2 (en) * 2014-12-18 2018-08-14 Eaton Intelligent Power Limited Partitioned motor drive apparatus for subsea applications
CN107438944B (en) * 2015-12-22 2019-01-29 松下知识产权经营株式会社 The method for customizing and control device of electric motor of control device of electric motor
JP2018078670A (en) * 2016-11-07 2018-05-17 東芝シュネデール・インバータ株式会社 Inverter device
US10355614B1 (en) 2018-03-28 2019-07-16 Eaton Intelligent Power Limited Power converter apparatus with serialized drive and diagnostic signaling

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS62285666A (en) 1986-06-04 1987-12-11 Hitachi Ltd Controller for power converter
FR2674386B1 (en) * 1991-03-18 1993-07-23 Sgs Thomson Microelectronics SYSTEM FOR CONTROLLING AN INVERTER BY PULSE WIDTH MODULATION.
JPH08256492A (en) * 1995-01-20 1996-10-01 Sankyo Seiki Mfg Co Ltd Motor controller
JPH08251934A (en) * 1995-03-15 1996-09-27 Matsushita Electric Works Ltd Inverter
JPH0985457A (en) * 1995-09-20 1997-03-31 Miyachi Technos Corp Power source device for inverter controlled resistance seam welding
JPH1032984A (en) * 1996-07-15 1998-02-03 Toshiba Corp Inverter apparatus
JP3332810B2 (en) * 1997-07-15 2002-10-07 株式会社日立製作所 Inverter control device

Also Published As

Publication number Publication date
US6335870B1 (en) 2002-01-01
DE19882631T1 (en) 2000-08-10
WO2000004629A1 (en) 2000-01-27
GB2345593B (en) 2002-02-20
GB0000553D0 (en) 2000-03-01
JP3754092B2 (en) 2006-03-08
CN1267404A (en) 2000-09-20
GB2345593A (en) 2000-07-12
CN1114260C (en) 2003-07-09

Similar Documents

Publication Publication Date Title
TW462142B (en) Inverter apparatus
JPWO2014178255A1 (en) Control device and map file conversion device
Ćalasan Analytical solution for no‐load induction machine speed calculation during direct start‐up
JP5490170B2 (en) Program creation support apparatus and program creation support method
Fang et al. On-line parameter estimator of an induction motor at standstill
TWI293421B (en) Process management systems and methods of the same
JP4821717B2 (en) Programmable controller, programmable controller support apparatus, and programmable controller system
JP2006302216A (en) Display device, screen data producing device and screen display system
JP2004341824A (en) Programming device of programmable controller
JP6334467B2 (en) Barcode instruction generator
JP2008033682A (en) Document creation support device and document creation support method
JP3939518B2 (en) Input / output address setting device, input / output address setting program and recording medium recording the same
JP2009301469A (en) Temperature controller system
JP6758599B2 (en) Terminal device
JP5784764B2 (en) Barcode instruction generator
JPH113105A (en) Programming device for programmable controller
JP3129401B2 (en) Read data conversion management device
JP2529653B2 (en) Storage method for displaying program comments
JP2010097478A (en) Programmable logic controller
JP2007241862A (en) Handling instruction system, program, and product
JPH1166163A (en) Operation management support system
JP3064719B2 (en) Graph creation device
JPH036535B2 (en)
JPH06236386A (en) Eos device by bar code
JPH08147487A (en) Electronic catalog editing device

Legal Events

Date Code Title Description
GD4A Issue of patent certificate for granted invention patent
MM4A Annulment or lapse of patent due to non-payment of fees